Novel heat insulation glasses case

By designing the thermos insulation bottle body and bottle cap in the glasses box, and combining push and limit components, the problem that existing glasses box cannot be insulated when temperature changes are changed, effectively insulating and limiting glasses is achieved, and the wearer's experience is improved.

CN222917126UActive Publication Date: 2025-05-30张海鹏
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Patent Information

Application Number
CN202422107404.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-05-30
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

Existing glasses cases cannot effectively insulate heat when temperature changes, causing the wearer to feel uncomfortable when removing the glasses.

Method used

A new type of thermally insulated glasses box is designed, which adopts the structural combination of the thermos insulation bottle body and the thermos insulation bottle cap, and has built-in push components and limit components. Through the cooperation of these components, the temperature isolation limit on the glasses can be achieved and the impact of temperature changes on the glasses is reduced.

Benefits of technology

Effectively reduce the impact of external temperature on glasses, avoid the wearer feeling discomfort due to temperature differences when removing glasses, and reduce the shaking and wear of glasses during storage through limiting components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel heat insulation spectacle case which comprises a heat insulation bottle body, one end of the heat insulation bottle body is in threaded connection with a heat insulation bottle cap, the inner wall of the heat insulation bottle body is fixedly connected with a protective pad, a pushing assembly is arranged at the bottom in the heat insulation bottle body, and a limiting assembly is arranged on the inner side of the heat insulation bottle cap; the pushing assembly comprises a pushing spring, a pushing clamping base and a first protection block, and one end of the pushing spring is fixedly connected with the bottom of the inner side of the thermal insulation bottle body. According to the novel heat insulation spectacle case provided by the utility model, through the structural matching design of the heat insulation bottle body and the heat insulation bottle cap, heat insulation can be carried out on stored spectacles, and the influence of external air temperature on the internally stored spectacles is reduced, so that discomfort brought to a wearer due to temperature difference when the spectacles are taken out is avoided; and the placed glasses can be limited through the pushing assembly and the limiting assembly, and the phenomenon that the surfaces of the glasses are abraded due to shaking of the glasses during storage is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of spectacle cases, in particular to a novel heat-insulating spectacle case. Background Art

[0002] Nowadays, more and more people wear glasses. To facilitate the carrying and protection of glasses, spectacle cases are configured when glasses are sold. At the same time, when glasses are placed in the spectacle case, due to weather reasons, when the temperature is relatively high or low, the glasses stored inside the spectacle case will also change temperature along with the temperature change. As a result, when the wearer takes out and wears the glasses, the relatively high or low temperature of the glasses will bring discomfort to the wearer.

[0003] Therefore, this application proposes a novel heat-insulating spectacle case to provide a new technical solution to solve the above-mentioned technical problems. Summary of the Utility Model

[0004] Based on this, in view of the above technical problems, it is necessary to provide a novel heat-insulating spectacle case. Through the structural cooperation design of a heat-insulating bottle body and a heat-insulating bottle cap, the glasses stored can be thermally insulated, reducing the influence of the external air temperature on the glasses stored inside. Thus, when the glasses are taken out, the temperature difference will not bring discomfort to the wearer. Moreover, through a pushing component and a limiting component, the glasses put in can be limited, reducing the phenomenon that the glasses shake during storage and causing wear on the surface of the glasses.

[0005] To solve the above technical problems, the utility model adopts the following technical solutions:

[0006] A novel heat-insulating spectacle case is applied to the storage and thermal insulation of glasses.

[0007] The novel heat-insulating spectacle case specifically includes:

[0008] A heat-insulating bottle body, one end of the heat-insulating bottle body is threadedly connected with a heat-insulating bottle cap. A protective pad is fixedly connected to the inner wall of the heat-insulating bottle body. A pushing component is arranged at the bottom inside the heat-insulating bottle body, and a limiting component is arranged inside the heat-insulating bottle cap.

[0009] The pushing component includes a pushing spring, a pushing clamping seat, and a first protective block. One end of the pushing spring is fixedly connected to the bottom inside the heat-insulating bottle body, the other end of the pushing spring is inserted and connected with the pushing clamping seat, and the end of the pushing clamping seat away from the pushing spring is snap-connected with the first protective block.

[0010] The limiting component includes a second protective block. One end of the second protective block is snap-connected with the heat-insulating bottle cap, and the other end of the second protective block extends to the outside of the heat-insulating bottle cap. When the heat-insulating bottle cap is connected to the heat-insulating bottle body, the other end of the second protective block extends to the inside of the heat-insulating bottle body.

[0011] As a preferred embodiment of the novel heat-insulating glasses case provided by the present utility model, the outer peripheral side of the pushing seat is attached to the protective pad, and the maximum diameter of the first protective block is smaller than the maximum diameter of the pushing seat.

[0012] As a preferred embodiment of the novel heat-insulating glasses case provided by the present utility model, a first snap ring is arranged inside one end of the pushing seat away from the pushing spring, a plurality of first snap grooves are formed on the outer side of the first protective block, and the pushing seat is snap-connected to the first snap grooves formed on the first protective block through the first snap ring.

[0013] As a preferred embodiment of the novel heat-insulating glasses case provided by the present utility model, a second snap ring is fixedly connected to the inner side of the heat-insulating bottle cap, one end of the second protective block is inserted into the inner side of the second snap ring, a plurality of second snap grooves are formed on the outer side of the second protective block, and the second snap ring is snap-connected to the second snap grooves formed on the outer side of the second protective block.

[0014] As a preferred embodiment of the novel heat-insulating glasses case provided by the present utility model, a protective sleeve is sleeved on the outer side of the heat-insulating bottle body, and a plurality of anti-slip grooves are formed on the outer side of the protective sleeve.

[0015] As a preferred embodiment of the novel heat-insulating glasses case provided by the present utility model, the materials of the first protective block and the second protective block are both silica gel.

[0016] Compared with the prior art, the present utility model has the following beneficial effects:

[0017] For the novel heat-insulating glasses case provided by the present utility model, through the structural cooperation design of the heat-insulating bottle body and the heat-insulating bottle cap, the glasses stored can be heat-insulated, and the influence of the external air temperature on the glasses stored inside can be reduced, so that when the glasses are taken out, the wearer will not feel discomfort due to the temperature difference. Moreover, through the pushing assembly and the limiting assembly, the glasses put in can be limited, and the phenomenon that the glasses shake during storage and the surface of the glasses is worn can be reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the solutions in the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0019] Figure 1 It is a schematic diagram of the overall structure of the novel heat-insulating glasses case provided by the present utility model;

[0020] Figure 2 Schematic diagram of the structure of the new heat-insulating glasses case pushing component and limiting component provided by the present utility model;

[0021] Figure 3 Schematic diagram of the structure of the new heat-insulating glasses case pushing component provided by the present utility model;

[0022] Figure 4 Schematic diagram of the structure of the new heat-insulating glasses case limiting component provided by the present utility model.

[0023] The markings in the figure are explained as follows:

[0024] 1. Heat-insulating bottle body; 2. Heat-insulating bottle cap; 3. Pushing component; 4. Limiting component; 5. Pushing spring; 6. Pushing card seat; 7. First protective block; 8. First buckling ring; 9. First buckling groove; 10. Second protective block; 11. Second buckling ring; 12. Second buckling groove; 13. Protective sleeve; 14. Anti-slip groove; 15. Protective pad. Specific embodiments

[0025] In order to enable those skilled in the art to better understand the solution of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0026] As described in the background art, due to weather reasons, when the temperature is relatively high or low, the glasses stored inside the glasses case will also change temperature with the temperature change. Furthermore, when the wearer takes and wears the glasses, the relatively high or low temperature of the glasses will bring discomfort to the wearer.

[0027] To solve this technical problem, the present utility model provides a new heat-insulating glasses case, which is applied to glasses storage and temperature insulation.

[0028] Specifically, please refer to Figure 1 - Figure 4 , the new heat-insulating glasses case specifically includes:

[0029] A heat-insulating bottle body 1, one end of the heat-insulating bottle body 1 is threadedly connected with a heat-insulating bottle cap 2, a protective pad 15 is fixedly connected to the inner wall of the heat-insulating bottle body 1, a pushing component 3 is arranged at the bottom inside the heat-insulating bottle body 1, and a limiting component 4 is arranged inside the heat-insulating bottle cap 2;

[0030] The pushing component 3 includes a pushing spring 5, a pushing socket 6, and a first protective block 7. One end of the pushing spring 5 is fixedly connected to the bottom inside the heat-insulating bottle body 1, and the other end of the pushing spring 5 is inserted and connected with a pushing socket 6. A first protective block 7 is snap-connected to the end of the pushing socket 6 away from the pushing spring 5;

[0031] The limiting component 4 includes a second protective block 10. One end of the second protective block 10 is snap-connected to the heat-insulating bottle cap 2, and the other end of the second protective block 10 extends to the outside of the heat-insulating bottle cap 2. When the heat-insulating bottle cap 2 is connected to the heat-insulating bottle body 1, the other end of the second protective block 10 extends to the inside of the heat-insulating bottle body 1.

[0032] The novel heat-insulating glasses case provided by the present utility model, through the structural cooperation design of the heat-insulating bottle body 1 and the heat-insulating bottle cap 2, enables the glasses stored therein to be heat-insulated, reducing the influence of the external air temperature on the glasses stored inside, so that when the glasses are taken out, there will be no discomfort caused to the wearer due to the temperature difference. Moreover, through the pushing component 3 and the limiting component 4, the glasses put in can be limited, reducing the phenomenon that the glasses shake during storage, resulting in wear on the surface of the glasses.

[0033] In order to enable those skilled in the art to better understand the solution of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings.

[0034] Embodiment 1:

[0035] Please refer to Figure 1 - Figure 4 A novel heat-insulating glasses case, which includes:

[0036] A heat-insulating bottle body 1, one end of the heat-insulating bottle body 1 is threadedly connected with a heat-insulating bottle cap 2. A protective pad 15 is fixedly connected to the inner wall of the heat-insulating bottle body 1. A pushing component 3 is arranged at the inner bottom of the heat-insulating bottle body 1, and a limiting component 4 is arranged inside the heat-insulating bottle cap 2. It can be seen that the glasses can be stored through the heat-insulating bottle body 1, the heat-insulating bottle cap 2 can block the heat-insulating bottle body 1 to prevent the glasses from slipping out of the inside of the heat-insulating bottle body 1. The protective pad 15 can reduce the wear phenomenon on the surface of the glasses caused by the friction between the glasses and the inner wall of the heat-insulating bottle body 1. The pushing component 3 can limit one end of the glasses. When the heat-insulating bottle cap 2 is connected to the heat-insulating bottle body 1, the limiting component 4 can limit the other end of the glasses, thereby reducing the phenomenon that the glasses shake inside the heat-insulating bottle body 1. Among them, the structure of the heat-insulating bottle body 1 is the same as that of the thermos in the prior art, and the heat-insulating effect is achieved through the vacuum design of the middle gap between the inner and outer layers. Therefore, how the heat-insulating bottle body 1 achieves the heat-insulating effect will not be described in detail in this application.

[0037] Specifically, the pushing component 3 includes a pushing spring 5, a pushing socket 6, and a first protective block 7. One end of the pushing spring 5 is fixedly connected to the bottom inside the heat-insulating bottle body 1, and the other end of the pushing spring 5 is inserted and connected with a pushing socket 6. A first protective block 7 is snap-connected to the end of the pushing socket 6 away from the pushing spring 5. Further, the outer peripheral side of the pushing socket 6 is in contact with the protective pad 15, and the maximum diameter of the first protective block 7 is smaller than the maximum diameter of the pushing socket 6. Further, a first snap ring 8 is provided inside the end of the pushing socket 6 away from the pushing spring 5, and a plurality of first snap grooves 9 are provided on the outer side of the first protective block 7. The pushing socket 6 is snap-connected to the first snap grooves 9 provided on the first protective block 7 through the first snap ring 8.

[0038] It can be seen that when the glasses are placed inside the heat-insulating bottle body 1, one end of the glasses contacts the first protective block 7, so as to push the pushing socket 6 to squeeze the pushing spring 5 through the first protective block 7, enabling the pushing spring 5 to accumulate force, and at the same time applying a continuously opposite acting force to the pushing socket 6. When the glasses no longer squeeze the first protective block 7, the pushing spring 5 releases the accumulated force to push the pushing socket 6 to drive the first protective block 7 to push the glasses outward of the heat-insulating bottle body 1, so that the other end of the glasses extends outside the heat-insulating bottle body 1, facilitating the taking of the glasses. Among them, the outer side of the pushing socket 6 is in contact with the protective pad 15, so that the movement of the pushing socket 6 is limited, and the maximum diameter of the first protective block 7 is smaller than the maximum diameter of the pushing socket 6, so that the first protective block 7 will not contact the protective pad 15, thus avoiding the phenomenon that the friction force increases due to the contact between the first protective block 7 and the protective pad 15, resulting in the first protective block 7 being stuck. Among them, the pushing socket 6 is snap-connected to the first snap grooves 9 provided on the first protective block 7 through the first snap ring 8, enabling the first snap ring 8 to be snap-connected to the first snap grooves 9 at different positions to adjust the axial position of the first protective block 7, so as to limit glasses of different sizes and lengths.

[0039] Specifically, the limiting component 4 includes a second protective block 10. One end of the second protective block 10 is snap-connected to the heat-insulating bottle cap 2, and the other end of the second protective block 10 extends outside the heat-insulating bottle cap 2. When the heat-insulating bottle cap 2 is connected to the heat-insulating bottle body 1, the other end of the second protective block 10 extends inside the heat-insulating bottle body 1. Further, a second snap ring 11 is fixedly connected to the inside of the heat-insulating bottle cap 2. One end of the second protective block 10 is inserted inside the second snap ring 11, and a plurality of second snap grooves 12 are provided on the outer side of the second protective block 10. The second snap ring 11 is snap-connected to the second snap grooves 12 provided on the outer side of the second protective block 10.

[0040] It can be seen that after the glasses are placed inside the heat-insulating bottle body 1, the heat-insulating bottle cap 2 is moved to the end of the heat-insulating bottle body 1, and the second protective block 10 is inserted into the heat-insulating bottle body 1, so as to completely push the glasses into the heat-insulating bottle body 1. The connection with the heat-insulating bottle body 1 is achieved by rotating the heat-insulating bottle cap 2. Among them, when the second protective block 10 pushes the glasses into the heat-insulating bottle body 1, it contacts the other end of the glasses through the pushing component 3. Due to the reverse force generated by the pushing spring 5, one end of the glasses fits tightly with the pushing component 3, and the other end of the glasses fits tightly with the limiting component 4. Thus, after the heat-insulating bottle cap 2 is connected to the heat-insulating bottle body 1, the limiting effect on the glasses is achieved through the cooperation of the pushing component 3 and the limiting component 4. Among them, the heat-insulating bottle cap 2 is snap-connected to the snap groove 12 opened on the second protective block 10 through the snap ring two 11, so that the snap ring two 11 is snap-connected to the snap grooves 12 at different positions to realize the axial position adjustment of the second protective block 10, thereby being able to limit glasses of different sizes and lengths.

[0041] Embodiment 2:

[0042] The novel heat-insulating glasses case provided in Embodiment 1 is further optimized. Specifically, as Figure 1 shown, a protective sleeve 13 is sleeved outside the heat-insulating bottle body 1, and a plurality of anti-slip grooves 14 are opened on the outside of the protective sleeve 13.

[0043] Through the above structural design, the beauty and anti-slip effect of the outside of the heat-insulating bottle body 1 are improved through the protective sleeve 13. The anti-slip effect can be further improved through the anti-slip grooves 14 opened on the protective sleeve 13, avoiding the phenomenon of accidental dropping of the device.

[0044] Embodiment 3:

[0045] The novel heat-insulating glasses case provided in Embodiment 1 is further optimized. Specifically, the materials of the first protective block 7 and the second protective block 10 are both silica gel.

[0046] Through the above structural design, due to the material characteristics of the first protective block 7 and the second protective block 10, the damage caused by the pushing component 3 and the limiting component 4 when squeezing the glasses can be effectively reduced.

Claims

1. A new type of heat-insulating glasses case, characterized in that: include: A thermal insulation bottle body (1), one end of the thermal insulation bottle body (1) is threadedly connected to a thermal insulation bottle cap (2), the inner wall of the thermal insulation bottle body (1) is fixedly connected to a protective pad (15), the inner bottom of the thermal insulation bottle body (1) is provided with a pushing component (3), and the inner side of the thermal insulation bottle cap (2) is provided with a limiting component (4); The push assembly (3) comprises a push spring (5), a push holder (6), and a protective block (7); one end of the push spring (5) is fixedly connected to the bottom of the inner side of the heat-insulating bottle body (1); the other end of the push spring (5) is plug-connected with the push holder (6); and the end of the push holder (6) away from the push spring (5) is buckled and connected with the protective block (7); The limiting component (4) comprises a second protective block (10), one end of which is snap-fitted and connected to the thermal insulation bottle cover (2), and the other end of which extends to the outside of the thermal insulation bottle cover (2); when the thermal insulation bottle cover (2) is connected to the thermal insulation bottle body (1), the other end of the second protective block (10) extends to the inside of the thermal insulation bottle body (1).

2. The novel heat-insulating glasses case according to claim 1 is characterized in that: The outer peripheral side of the push card seat (6) is in contact with the protective pad (15), and the maximum diameter of the protective block 1 (7) is smaller than the maximum diameter of the push card seat (6).

3. The novel heat-insulating glasses case according to claim 1 is characterized in that: A buckling ring (8) is provided on the inner side of one end of the push card seat (6) away from the push spring (5), and a plurality of buckling grooves (9) are provided on the outer side of the protection block (7). The push card seat (6) is buckled and connected with the buckling grooves (9) provided on the protection block (7) through the buckling ring (8).

4. The novel heat-insulating glasses case according to claim 1, characterized in that: A second buckling ring (11) is fixedly connected to the inner side of the insulation bottle cover (2), one end of the second protection block (10) is inserted into the inner side of the second buckling ring (11), a plurality of second buckling grooves (12) are provided on the outer side of the second protection block (10), and the second buckling ring (11) is buckled and connected with the second buckling grooves (12) provided on the outer side of the second protection block (10).

5. The novel heat-insulating glasses case according to claim 1, characterized in that: The outer side of the heat-insulating bottle body (1) is provided with a protective sleeve (13), and the outer side of the protective sleeve (13) is provided with a plurality of anti-slip grooves (14).

6. The novel heat-insulating glasses case according to claim 1, characterized in that: The materials of the protective block 1 (7) and the protective block 2 (10) are both silicone.